Structural analysis of polysaccharides in Chinese lacquer by NMR spectroscopy

被引:24
作者
Lu, R
Hattori, K
Xia, ZY
Yoshida, T
Yang, JH
Zhang, LN
Du, YM
Miyakoshi, T
Uryu, T
机构
[1] Hokkaido Univ, Grad Sch Sci, Dept Polymer Sci, Kita Ku, Sapporo, Hokkaido 0600810, Japan
[2] Wuhan Univ, Dept Environm Sci, Wuhan 430072, Peoples R China
[3] Meiji Univ, Fac Sci & Engn, Dept Ind Chem, Tama Ku, Kawasaki, Kanagawa 2140033, Japan
[4] Univ Tokyo, Inst Ind Sci, Minato Ku, Tokyo 1060032, Japan
关键词
D O I
10.2115/fiber.55.47
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
Structural characterization of the Chinese lacquer polysaccharide of Rhus vernicifera was performed by means of high resolution NMR spectroscopy involving two dimensional NMR measurements such as field gradient DQF-COSY, TOCSY, HMQC, and HMBC experiments. Most of complicated proton and carbon absorptions were assigned. It was identified that the lacquer polysaccharide had a 1,3-linked D-galactopyranosidic main chain with complex side chains consisting of D-galactose, 4-O-methyl-D-glucuronic acid, D-glucuronic acid, L-arabinose, and L-rhamnose. The coupling constants (J(1,2)) of anomeric protons in the DQF-COSY spectrum suggested that the galactopyranose residue in the main chain, and 4-O-methyl-D-glucuronic acid and D-glucuronic acid in the terminal of the side-chains (J(1,2) = 7.2, 9.0 Hz and 8.1 Hz) had a beta-linkage, and the terminal D-galactopyranose, L-arabinose and L-rhamnose (J(1,2) less than or equal to 3.6 Hz) in the side-chains had an alpha-linkage. The proportions of the component sugar units were calculated by the intensity of the anomeric carbon signals and were in good agreement with those by the methylation analysis reported previously. These results indicate that the NMR characterization can be widely used to investigate the relationship between the structure of lacquer polysaccharides and specific biological activities.
引用
收藏
页码:47 / 56
页数:10
相关论文
共 50 条
  • [31] Structure elucidation of glycoprotein glycans and of polysaccharides by NMR spectroscopy
    Leeflang, BR
    Faber, EJ
    Erbel, P
    Vliegenthart, JFG
    [J]. JOURNAL OF BIOTECHNOLOGY, 2000, 77 (01) : 115 - 122
  • [32] Structural proteomics by NMR spectroscopy
    Shin, Joon
    Lee, Woonghee
    Lee, Weontae
    [J]. EXPERT REVIEW OF PROTEOMICS, 2008, 5 (04) : 589 - 601
  • [33] STRUCTURAL CLARIFICATION BY NMR SPECTROSCOPY
    KESSLER, H
    [J]. ARCHIV DER PHARMAZIE UND BERICHTE DER DEUTSCHEN PHARMAZEUTISCHEN GESSELSCHAFT, 1969, 302 (09): : B201 - &
  • [34] Peptide structural analysis by solid-state NMR spectroscopy
    Bechinger, B
    Kinder, R
    Helmle, M
    Vogt, TCB
    Harzer, U
    Schinzel, S
    [J]. BIOPOLYMERS, 1999, 51 (03) : 174 - 190
  • [35] The structural analysis of protein-protein interactions by NMR spectroscopy
    O'Connell, Mitchell R.
    Gamsjaeger, Roland
    Mackay, Joel P.
    [J]. PROTEOMICS, 2009, 9 (23) : 5224 - 5232
  • [36] Structural genomics by NMR spectroscopy
    Gutmanas, Aleksandras
    Yee, Adelinda
    Srisailam, Sampath
    Arrowsmith, Cheryl H.
    [J]. STRUCTURE AND BIOPHYSICS - NEW TECHNOLOGIES FOR CURRENT CHALLENGES IN BIOLOGY BEYOND, 2007, 231 : 1 - +
  • [37] Structural analysis of the regulatory site of factor H by NMR spectroscopy
    Hocking, H
    Herbert, A
    Uhrin, D
    Barlow, PN
    [J]. MOLECULAR IMMUNOLOGY, 2006, 43 (1-2) : 142 - 142
  • [38] Analysis of the Decorative Patterns of Chinese Jingchu Lacquer Ware
    Wu, Ping
    [J]. 2014 4TH INTERNATIONAL CONFERENCE ON APPLIED SOCIAL SCIENCE (ICASS 2014), PT 3, 2014, 53 : 149 - 154
  • [39] Chinese lacquer ware
    Nightingale, HO
    [J]. JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY-US, 1911, 3 : 59 - 60
  • [40] NMR analysis of compositionally heterogeneous polysaccharides
    Cheng, H. N.
    [J]. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 255